We propose a quantum key distribution scheme which closely matches the performance of a perfect single photon source. It nearly attains the physical upper bound in terms of key generation rate and maximally achievable distance. Our scheme relies on a practical setup based on a parametric downconversion source and present day, nonideal photon-number detection. Arbitrary experimental imperfections which lead to bit errors are included. We select decoy states by classical postprocessing. This allows one to improve the effective signal statistics and achievable distance
The decoy-state method is a standard enhancement to quantum key distribution (QKD) protocols that ha...
Photon number resolving detectors can enhance the performance of many practical quantum cryptographi...
Decoy states have been proven to be a very useful method for significantly enhancing the performance...
We propose a quantum key distribution scheme which closely matches the performance of a perfect sing...
In this paper, a new decoy state scheme for quantum key distribution with parametric down-conversion...
We simulate quantum key distribution (QKD) experimental setups and give out some improvement for QKD...
Decoy states have recently been proposed as a useful method for substantially improving the performa...
We report on a bright, nondegenerate type-I parametric down-conversion source, which is well suited ...
Signal state preparation in quantum key distribution schemes can be realized using either an active ...
Problem statement: Quantum key distribution provides unconditional security guaranteed by the fundam...
Quantum key distribution establishes a secret string of bits between two distant parties. Of concern...
The use of decoy states in quantum key distribution (QKD) has provided a method for substantially in...
We propose a practical decoy state method with heralded single photon source for quantum key distrib...
In practical quantum key distribution (QKD), weak coherent states as the photon sources have a limit...
We have presented a method to estimate parameters of the decoy state protocol based on one decoy st...
The decoy-state method is a standard enhancement to quantum key distribution (QKD) protocols that ha...
Photon number resolving detectors can enhance the performance of many practical quantum cryptographi...
Decoy states have been proven to be a very useful method for significantly enhancing the performance...
We propose a quantum key distribution scheme which closely matches the performance of a perfect sing...
In this paper, a new decoy state scheme for quantum key distribution with parametric down-conversion...
We simulate quantum key distribution (QKD) experimental setups and give out some improvement for QKD...
Decoy states have recently been proposed as a useful method for substantially improving the performa...
We report on a bright, nondegenerate type-I parametric down-conversion source, which is well suited ...
Signal state preparation in quantum key distribution schemes can be realized using either an active ...
Problem statement: Quantum key distribution provides unconditional security guaranteed by the fundam...
Quantum key distribution establishes a secret string of bits between two distant parties. Of concern...
The use of decoy states in quantum key distribution (QKD) has provided a method for substantially in...
We propose a practical decoy state method with heralded single photon source for quantum key distrib...
In practical quantum key distribution (QKD), weak coherent states as the photon sources have a limit...
We have presented a method to estimate parameters of the decoy state protocol based on one decoy st...
The decoy-state method is a standard enhancement to quantum key distribution (QKD) protocols that ha...
Photon number resolving detectors can enhance the performance of many practical quantum cryptographi...
Decoy states have been proven to be a very useful method for significantly enhancing the performance...